In polycrystals, faceted grains may become round and rough at high temperatures. Such a roughening phenomenon remains poorly understood, partly because of the lack of experimental observations. Here, we directly visualize the roughening dynamics of grain boundaries inside thin-film colloidal crystals at the single-particle level using video microscopy. The thermal fluctuations of grain boundaries appear to exhibit both static and dynamic critical-like behaviors, in contrast to the Kosterlitz-Thouless transition in typical free surface roughening. The roughening point shifts towards the melting point as the grain boundary’s mismatch angle θ decreases and is preempted by melting when θ<18°. Counterintuitively, the amplitude of grain-boundary ...
Microstructure of polycrystalline materials can be described as grain boundary (GB) networks; hence,...
Microstructure of polycrystalline materials can be described as grain boundary (GB) networks; hence,...
Understanding grain growth is key for controlling the microstructure and the mechanical properties o...
The dynamics of grain boundaries in two-dimensional colloidal crystals is studied using optical micr...
We study grain-boundary fluctuations in two-dimensional colloidal crystals in real space and time us...
The fabrication of functional materials via grain growth engineering implicitly relies on altering t...
Grain boundary dynamics and grain growth play a pivotal role in the fabrication of functional polycr...
Premelting is the localized loss of crystalline order at surfaces and defects at temperatures below ...
Premelting is the localized loss of crystalline order at surfaces and defects at temperatures below ...
We observe premelting at grain boundaries and dislocations within bulk colloidal crystals using vide...
In this thesis, the crystallisation, deformation, and grain boundaries of three-dimensional colloida...
The plastic flow of crystals takes place via the elementary flow of topological defects and is stron...
The structural and dynamic behaviour of two-dimensional binary colloidal polycrystals and fluids are...
Video microscopy is employed to study the melting behaviors of multilayer colloidal crystals compose...
We discuss the various mechanisms involved in the spontaneous shrinkage of circular grain boundaries...
Microstructure of polycrystalline materials can be described as grain boundary (GB) networks; hence,...
Microstructure of polycrystalline materials can be described as grain boundary (GB) networks; hence,...
Understanding grain growth is key for controlling the microstructure and the mechanical properties o...
The dynamics of grain boundaries in two-dimensional colloidal crystals is studied using optical micr...
We study grain-boundary fluctuations in two-dimensional colloidal crystals in real space and time us...
The fabrication of functional materials via grain growth engineering implicitly relies on altering t...
Grain boundary dynamics and grain growth play a pivotal role in the fabrication of functional polycr...
Premelting is the localized loss of crystalline order at surfaces and defects at temperatures below ...
Premelting is the localized loss of crystalline order at surfaces and defects at temperatures below ...
We observe premelting at grain boundaries and dislocations within bulk colloidal crystals using vide...
In this thesis, the crystallisation, deformation, and grain boundaries of three-dimensional colloida...
The plastic flow of crystals takes place via the elementary flow of topological defects and is stron...
The structural and dynamic behaviour of two-dimensional binary colloidal polycrystals and fluids are...
Video microscopy is employed to study the melting behaviors of multilayer colloidal crystals compose...
We discuss the various mechanisms involved in the spontaneous shrinkage of circular grain boundaries...
Microstructure of polycrystalline materials can be described as grain boundary (GB) networks; hence,...
Microstructure of polycrystalline materials can be described as grain boundary (GB) networks; hence,...
Understanding grain growth is key for controlling the microstructure and the mechanical properties o...